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FOXO1是嵌合抗原受体T细胞(CAR T)记忆编程的主要调节因子。

FOXO1 is a master regulator of CAR T memory programming.

作者信息

Doan Alexander, Mueller Katherine P, Chen Andy, Rouin Geoffrey T, Daniel Bence, Lattin John, Chen Yingshi, Mozarsky Brett, Markovska Martina, Arias-Umana Jose, Hapke Robert, Jung Inyoung, Xu Peng, Klysz Dorota, Bashti Malek, Quinn Patrick J, Sandor Katalin, Zhang Wenxi, Hall Junior, Lareau Caleb, Grupp Stephan A, Fraietta Joseph A, Sotillo Elena, Satpathy Ansuman T, Mackall Crystal L, Weber Evan W

机构信息

Center for Cancer Cell Therapy, Stanford Cancer Institute, Stanford University School of Medicine, Stanford, CA 94305, USA.

Department of Pediatrics, Division of Oncology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104 USA.

出版信息

Res Sq. 2023 Nov 7:rs.3.rs-2802998. doi: 10.21203/rs.3.rs-2802998/v1.

Abstract

Poor CAR T persistence limits CAR T cell therapies for B cell malignancies and solid tumors. The expression of memory-associated genes such as (protein name TCF1) is linked to response and long-term persistence in patients, thereby implicating memory programs in therapeutic efficacy. Here, we demonstrate that the pioneer transcription factor, FOXO1, is responsible for promoting memory programs and restraining exhaustion in human CAR T cells. Pharmacologic inhibition or gene editing of endogenous in human CAR T cells diminished the expression of memory-associated genes, promoted an exhaustion-like phenotype, and impaired antitumor activity and . FOXO1 overexpression induced a gene expression program consistent with T cell memory and increased chromatin accessibility at FOXO1 binding motifs. FOXO1-overexpressing cells retained function, memory potential, and metabolic fitness during settings of chronic stimulation and exhibited enhanced persistence and antitumor activity . In contrast, TCF1 overexpression failed to enforce canonical memory programs or enhance CAR T cell potency. Importantly, endogenous FOXO1 activity correlated with CAR T and TIL responses in patients, underscoring its clinical relevance in cancer immunotherapy. Our results demonstrate that memory reprogramming through FOXO1 can enhance the persistence and potency of human CAR T cells and highlights the utility of pioneer factors, which bind condensed chromatin and induce local epigenetic remodeling, for optimizing therapeutic T cell states.

摘要

嵌合抗原受体(CAR)T细胞持久性较差限制了CAR T细胞疗法在B细胞恶性肿瘤和实体瘤治疗中的应用。诸如TCF1(蛋白名称)等与记忆相关基因的表达与患者的反应及长期持久性相关,从而表明记忆程序与治疗效果有关。在此,我们证明先驱转录因子FOXO1负责促进人类CAR T细胞中的记忆程序并抑制耗竭。对人类CAR T细胞中内源性FOXO1进行药理抑制或基因编辑会降低与记忆相关基因的表达,促进类似耗竭的表型,并损害抗肿瘤活性。FOXO1过表达诱导了与T细胞记忆一致的基因表达程序,并增加了FOXO1结合基序处的染色质可及性。在慢性刺激条件下,过表达FOXO1的细胞保留了功能、记忆潜力和代谢适应性,并表现出增强的持久性和抗肿瘤活性。相比之下,TCF1过表达未能强化经典记忆程序或增强CAR T细胞效力。重要的是,内源性FOXO1活性与患者的CAR T细胞和肿瘤浸润淋巴细胞反应相关,强调了其在癌症免疫治疗中的临床相关性。我们的结果表明,通过FOXO1进行记忆重编程可以增强人类CAR T细胞的持久性和效力,并突出了先驱因子的效用,这些因子结合浓缩染色质并诱导局部表观遗传重塑,以优化治疗性T细胞状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e314/10659532/4d0febf828f9/nihpp-rs2802998v1-f0008.jpg

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